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Spin Hall effect by surface roughness

机译:通过表面粗糙度旋转霍尔效应

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摘要

The spin Hall and its inverse effects, driven by the spin orbit interaction, provide an interconversion mechanism between spin and charge currents. Since the spin Hall effect generates and manipulates spin current electrically, to achieve a large effect is becoming an important topic in both academia and industries. So far, materials with heavy elements carrying a strong spin orbit interaction, provide the only option. We propose here a new mechanism, using the surface roughness in ultrathin films, to enhance the spin Hall effect without heavy elements. Our analysis based on Cu and Al thin films suggests that surface roughness is capable of driving a spin Hall angle that is comparable to that in bulk Au. We also demonstrate that the spin Hall effect induced by surface roughness subscribes only to the side-jump contribution but not the skew scattering. The paradigm proposed in this paper provides the second, not if only, alternative to generate a sizable spin Hall effect.
机译:在自旋轨道相互作用的驱动下,自旋霍尔及其逆效应提供了自旋电流和电荷电流之间的互转换机制。由于自旋霍尔效应产生并以电方式操纵自旋电流,因此要获得大的效果已成为学术界和工业界的重要课题。迄今为止,唯一的选择是带有重元素的材料具有很强的自旋轨道相互作用。我们在这里提出一种新的机制,利用超薄膜的表面粗糙度来增强无重元素的自旋霍尔效应。我们基于Cu和Al薄膜的分析表明,表面粗糙度能够驱动自旋霍尔角,该角与本体Au相当。我们还证明了由表面粗糙度引起的自旋霍尔效应仅订阅了侧跃贡献,而不是歪斜散射。本文提出的范式提供了第二种(即使不是唯一的)替代方法,以产生可观的自旋霍尔效应。

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